Numerical Fracture Mechanics

Numerical Fracture Mechanics Author M.H. Aliabadi
ISBN-10 0792311752
Release 1991-07-31
Pages 276
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The purpose of this book is to present, describe and demonstrate the use of numerical methods in solving crack problems in fracture mechanics. The text concentrates, to a large extent, on the application of the Boundary Element Method (BEM) to fracture mechanics, although an up-to-date account of recent advances in other numerical methods such as the Finite Element Method is also presented. The book is an integrated presentation of modem numerical fracture mechanics, it contains a compilation of the work of many researchers as well as accounting for some of authors' most recent work on the subject. It is hoped that this book will bridge the gap that exists between specialist books on theoretical fracture mechanics on one hand, and texts on numerical methods on the other. Although most of the methods presented are the latest developments in the field of numerical fracture mechanics, the authors have also included some simple techniques which are essential for understanding the physical principles that govern crack problems in general. Different numerical techniques are described in detail and where possible simple examples are included, as well as test results for more complicated problems. The book consists of six chapters. The first chapter initially describes the historical development of theoretical fracture mechanics, before proceeding to present the basic concepts such as energy balance, stress intensity factors, residual strength and fatigue crack growth as well as briefly describing the importance of stress intensity factors in corrosion and residual stress cracking.



Engineering Fracture Mechanics

Engineering Fracture Mechanics Author D. R. J. Owen
ISBN-10 STANFORD:36105030589001
Release 1983
Pages 305
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Numerical Fracture Mechanics

Numerical Fracture Mechanics Author M.H. Aliabadi
ISBN-10 9401054851
Release 2012-10-23
Pages 276
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The purpose of this book is to present, describe and demonstrate the use of numerical methods in solving crack problems in fracture mechanics. The text concentrates, to a large extent, on the application of the Boundary Element Method (BEM) to fracture mechanics, although an up-to-date account of recent advances in other numerical methods such as the Finite Element Method is also presented. The book is an integrated presentation of modem numerical fracture mechanics, it contains a compilation of the work of many researchers as well as accounting for some of authors' most recent work on the subject. It is hoped that this book will bridge the gap that exists between specialist books on theoretical fracture mechanics on one hand, and texts on numerical methods on the other. Although most of the methods presented are the latest developments in the field of numerical fracture mechanics, the authors have also included some simple techniques which are essential for understanding the physical principles that govern crack problems in general. Different numerical techniques are described in detail and where possible simple examples are included, as well as test results for more complicated problems. The book consists of six chapters. The first chapter initially describes the historical development of theoretical fracture mechanics, before proceeding to present the basic concepts such as energy balance, stress intensity factors, residual strength and fatigue crack growth as well as briefly describing the importance of stress intensity factors in corrosion and residual stress cracking.



Coupled Experimental numerical Fracture Mechanics

Coupled Experimental numerical Fracture Mechanics Author Hadi Haeri
ISBN-10 3659390720
Release 2015-03-11
Pages 184
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Coupled Experimental numerical Fracture Mechanics has been writing in one form or another for most of life. You can find so many inspiration from Coupled Experimental numerical Fracture Mechanics also informative, and entertaining. Click DOWNLOAD or Read Online button to get full Coupled Experimental numerical Fracture Mechanics book for free.



Numerical methods in fracture mechanics

Numerical methods in fracture mechanics Author Anthony Roger Luxmoore
ISBN-10 UOM:39015019636680
Release 1990
Pages 668
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Numerical methods in fracture mechanics has been writing in one form or another for most of life. You can find so many inspiration from Numerical methods in fracture mechanics also informative, and entertaining. Click DOWNLOAD or Read Online button to get full Numerical methods in fracture mechanics book for free.



Finite Elements in Fracture Mechanics

Finite Elements in Fracture Mechanics Author Meinhard Kuna
ISBN-10 9789400766808
Release 2013-07-19
Pages 447
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Fracture mechanics has established itself as an important discipline of growing interest to those working to assess the safety, reliability and service life of engineering structures and materials. In order to calculate the loading situation at cracks and defects, nowadays numerical techniques like finite element method (FEM) have become indispensable tools for a broad range of applications. The present monograph provides an introduction to the essential concepts of fracture mechanics, its main goal being to procure the special techniques for FEM analysis of crack problems, which have to date only been mastered by experts. All kinds of static, dynamic and fatigue fracture problems are treated in two- and three-dimensional elastic and plastic structural components. The usage of the various solution techniques is demonstrated by means of sample problems selected from practical engineering case studies. The primary target group includes graduate students, researchers in academia and engineers in practice.



Numerical Fracture Mechanics Using Finite Element Method

Numerical Fracture Mechanics Using Finite Element Method Author Viriyawan Murti
ISBN-10 OCLC:219967380
Release 1986
Pages 510
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Numerical Methods in Fracture Mechanics

Numerical Methods in Fracture Mechanics Author D. R. J. Owen
ISBN-10 090667431X
Release 1984
Pages 814
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Numerical Methods in Fracture Mechanics has been writing in one form or another for most of life. You can find so many inspiration from Numerical Methods in Fracture Mechanics also informative, and entertaining. Click DOWNLOAD or Read Online button to get full Numerical Methods in Fracture Mechanics book for free.



Recent Trends in Fracture and Damage Mechanics

Recent Trends in Fracture and Damage Mechanics Author Geralf Hütter
ISBN-10 9783319214672
Release 2015-09-01
Pages 442
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This book covers a wide range of topics in fracture and damage mechanics. It presents historical perspectives as well as recent innovative developments, presented by peer reviewed contributions from internationally acknowledged authors. The volume deals with the modeling of fracture and damage in smart materials, current industrial applications of fracture mechanics, and it explores advances in fracture testing methods. In addition, readers will discover trends in the field of local approach to fracture and approaches using analytical mechanics. Scholars in the fields of materials science, engineering and computational science will value this volume which is dedicated to Meinhard Kuna on the occasion of his 65th birthday in 2015. This book incorporates the proceedings of an international symposium that was organized to honor Meinhard Kuna’s contributions to the field of theoretical and applied fracture and damage mechanics.



Fracture Mechanics

Fracture Mechanics Author Ted L. Anderson
ISBN-10 9781420058215
Release 2005-06-24
Pages 640
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With its combination of practicality, readability, and rigor that is characteristic of any truly authoritative reference and text, Fracture Mechanics: Fundamentals and Applications quickly established itself as the most comprehensive guide to fracture mechanics available. It has been adopted by more than 100 universities and embraced by thousands of professional engineers worldwide. Now in its third edition, the book continues to raise the bar in both scope and coverage. It encompasses theory and applications, linear and nonlinear fracture mechanics, solid mechanics, and materials science with a unified, balanced, and in-depth approach. Reflecting the many advances made in the decade since the previous edition came about, this indispensable Third Edition now includes: A new chapter on environmental cracking Expanded coverage of weight functions New material on toughness test methods New problems at the end of the book New material on the failure assessment diagram (FAD) method Expanded and updated coverage of crack closure and variable-amplitude fatigue Updated solutions manual In addition to these enhancements, Fracture Mechanics: Fundamentals and Applications, Third Edition also includes detailed mathematical derivations in appendices at the end of applicable chapters; recent developments in laboratory testing, application to structures, and computational methods; coverage of micromechanisms of fracture; and more than 400 illustrations. This reference continues to be a necessity on the desk of anyone involved with fracture mechanics.



Porous Rock Fracture Mechanics

Porous Rock Fracture Mechanics Author Amir Shojaei
ISBN-10 9780081007822
Release 2017-05-05
Pages 336
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Porous Rock Failure Mechanics: Hydraulic Fracturing, Drilling and Structural Engineering focuses on the fracture mechanics of porous rocks and modern simulation techniques for progressive quasi-static and dynamic fractures. The topics covered in this volume include a wide range of academic and industrial applications, including petroleum, mining, and civil engineering. Chapters focus on advanced topics in the field of rock’s fracture mechanics and address theoretical concepts, experimental characterization, numerical simulation techniques, and their applications as appropriate. Each chapter reflects the current state-of-the-art in terms of the modern use of fracture simulation in industrial and academic sectors. Some of the major contributions in this volume include, but are not limited to: anisotropic elasto-plastic deformation mechanisms in fluid saturated porous rocks, dynamics of fluids transport in fractured rocks and simulation techniques, fracture mechanics and simulation techniques in porous rocks, fluid-structure interaction in hydraulic driven fractures, advanced numerical techniques for simulation of progressive fracture, including multiscale modeling, and micromechanical approaches for porous rocks, and quasi-static versus dynamic fractures in porous rocks. This book will serve as an important resource for petroleum, geomechanics, drilling and structural engineers, R&D managers in industry and academia. Includes a strong editorial team and quality experts as chapter authors Presents topics identified for individual chapters are current, relevant, and interesting Focuses on advanced topics, such as fluid coupled fractures, rock’s continuum damage mechanics, and multiscale modeling Provides a ‘one-stop’ advanced-level reference for a graduate course focusing on rock’s mechanics



Boundary Element Analysis in Computational Fracture Mechanics

Boundary Element Analysis in Computational Fracture Mechanics Author T.A. Cruse
ISBN-10 9024736145
Release 1988-06-30
Pages 180
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The Boundary Integral Equation (BIE) method has occupied me to various degrees for the past twenty-two years. The attraction of BIE analysis has been its unique combination of mathematics and practical application. The EIE method is unforgiving in its requirement for mathe matical care and its requirement for diligence in creating effective numerical algorithms. The EIE method has the ability to provide critical inSight into the mathematics that underlie one of the most powerful and useful modeling approximations ever devised--elasticity. The method has even revealed important new insights into the nature of crack tip plastic strain distributions. I believe that EIE modeling of physical problems is one of the remaining opportunities for challenging and fruitful research by those willing to apply sound mathematical discipline coupled with phys ical insight and a desire to relate the two in new ways. The monograph that follows is the summation of many of the successes of that twenty-two years, supported by the ideas and synergisms that come from working with individuals who share a common interest in engineering mathematics and their application. The focus of the monograph is on the application of EIE modeling to one of the most important of the solid mechanics disciplines--fracture mechanics. The monograph is not a trea tise on fracture mechanics, as there are many others who are far more qualified than I to expound on that topic.



Fracture Mechanics

Fracture Mechanics Author
ISBN-10
Release 1985
Pages 939
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Fracture Mechanics has been writing in one form or another for most of life. You can find so many inspiration from Fracture Mechanics also informative, and entertaining. Click DOWNLOAD or Read Online button to get full Fracture Mechanics book for free.



Fracture Mechanics of Concrete

Fracture Mechanics of Concrete Author
ISBN-10 OCLC:311481417
Release 1991
Pages 92
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Fracture Mechanics of Concrete has been writing in one form or another for most of life. You can find so many inspiration from Fracture Mechanics of Concrete also informative, and entertaining. Click DOWNLOAD or Read Online button to get full Fracture Mechanics of Concrete book for free.



Fracture Mechanics of Piezoelectric and Ferroelectric Solids

Fracture Mechanics of Piezoelectric and Ferroelectric Solids Author Daining Fang
ISBN-10 9783642300875
Release 2014-12-12
Pages 417
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Fracture Mechanics of Piezoelectric and Ferroelectric Solids presents a systematic and comprehensive coverage of the fracture mechanics of piezoelectric/ferroelectric materials, which includes the theoretical analysis, numerical computations and experimental observations. The main emphasis is placed on the mechanics description of various crack problems such static, dynamic and interface fractures as well as the physical explanations for the mechanism of electrically induced fracture. The book is intended for postgraduate students, researchers and engineers in the fields of solid mechanics, applied physics, material science and mechanical engineering. Dr. Daining Fang is a professor at the School of Aerospace, Tsinghua University, China; Dr. Jinxi Liu is a professor at the Department of Engineering Mechanics, Shijiazhuang Railway Institute, China.



Proceedings of the Third International Conference on Numerical Methods in Fracture Mechanics

Proceedings of the Third International Conference on Numerical Methods in Fracture Mechanics Author Anthony Roger Luxmoore
ISBN-10 090667431X
Release 1984
Pages 814
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Proceedings of the Third International Conference on Numerical Methods in Fracture Mechanics has been writing in one form or another for most of life. You can find so many inspiration from Proceedings of the Third International Conference on Numerical Methods in Fracture Mechanics also informative, and entertaining. Click DOWNLOAD or Read Online button to get full Proceedings of the Third International Conference on Numerical Methods in Fracture Mechanics book for free.



Mathematical Modeling and Numerical Simulation in Continuum Mechanics

Mathematical Modeling and Numerical Simulation in Continuum Mechanics Author Ivo Babuska
ISBN-10 3540423990
Release 2001-11-20
Pages 306
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The first international symposium on mathematical foundations of the finite element method was held at the University of Maryland in 1973. During the last three decades there has been great progress in the theory and practice of solving partial differential equations, and research has extended in various directions. Full-scale nonlinear problems have come within the range of nu merical simulation. The importance of mathematical modeling and analysis in science and engineering is steadily increasing. In addition, new possibili ties of analysing the reliability of computations have appeared. Many other developments have occurred: these are only the most noteworthy. This book is the record of the proceedings of the International Sympo sium on Mathematical Modeling and Numerical Simulation in Continuum Mechanics, held in Yamaguchi, Japan from 29 September to 3 October 2000. The topics covered by the symposium ranged from solids to fluids, and in cluded both mathematical and computational analysis of phenomena and algorithms. Twenty-one invited talks were delivered at the symposium. This volume includes almost all of them, and expresses aspects of the progress mentioned above. All the papers were individually refereed. We hope that this volume will be a stepping-stone for further developments in this field.